Avezoux A, Goodwin M G, Anthony C
Biochemistry Department, University of Southampton, U.K.
Biochem J. 1995 May 1;307 ( Pt 3)(Pt 3):735-41. doi: 10.1042/bj3070735.
All cysteines in methanol dehydrogenase (MDH) from Methylobacterium extorquens are involved in intra-subunit disulphide bridge formation. One of these is between adjacent cysteine residues which form a novel ring structure in the active site. It is readily reduced, the reduced enzyme being inactive in electron transfer to cytochrome cL. The inactivation is not a result of major structural change or to modification of the prosthetic group pyrrolo-quinoline quinone (PQQ). The reduced enzyme appears to remain active with the artificial electron acceptor phenazine ethosulphate but this is because the dye re-oxidizes the adjacent thiols back to the original disulphide bridge. No free thiols were detected during the reaction cycle with cytochrome cL. Carboxymethylation of the thiols produced by reduction of the novel disulphide ring led to formation of active enzyme. Reconstitution of inactive Ca(2+)-free MDH with Ca2+ led to active enzyme containing the oxidized bridge and reduced quinol, PQQH2, consistent with the conclusion that no hydrogen transfer occurs between these groups in the active site. It is concluded that the disulphide ring in the active site of MDH does not function as a redox component of the reaction. The disulphide ring has no special function in the process of Ca2+ incorporation into the active site. It is suggested that this novel structure might function in the stabilization or protection of the free radical semiquinone form of the prosthetic group (PQQH.) from solvent at the entrance to the active site.
嗜甲基营养菌甲醇脱氢酶(MDH)中的所有半胱氨酸都参与亚基内二硫键的形成。其中一个二硫键位于相邻的半胱氨酸残基之间,在活性位点形成一种新型环状结构。该结构很容易被还原,还原后的酶在向细胞色素cL进行电子转移时无活性。这种失活并非主要结构变化或辅基吡咯喹啉醌(PQQ)修饰的结果。还原后的酶似乎对人工电子受体硫酸吩嗪仍保持活性,但这是因为该染料将相邻的硫醇重新氧化回原来的二硫键。在与细胞色素cL的反应循环中未检测到游离硫醇。还原新型二硫环产生的硫醇进行羧甲基化后形成了活性酶。用Ca2+对无活性的无Ca2+ MDH进行重构,得到了含有氧化桥和还原型喹啉PQQH2的活性酶,这与活性位点中这些基团之间不发生氢转移的结论一致。得出的结论是,MDH活性位点中的二硫环在反应中不作为氧化还原成分起作用。二硫环在Ca2+掺入活性位点的过程中没有特殊功能。有人提出,这种新型结构可能在稳定或保护活性位点入口处辅基(PQQH·)的自由基半醌形式免受溶剂影响方面发挥作用。